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钙离子信号传导、瞬时受体电位通道与内皮通透性。

Ca2+ signaling, TRP channels, and endothelial permeability.

作者信息

Tiruppathi Chinnaswamy, Ahmmed Gias U, Vogel Stephen M, Malik Asrar B

机构信息

Department of Pharmacology and Center for Lung and Vascular Biology, College of Medicine, University of Illinois, Chicago, Illinois 60612, USA.

出版信息

Microcirculation. 2006 Dec;13(8):693-708. doi: 10.1080/10739680600930347.

Abstract

Increased endothelial permeability is the hallmark of inflammatory vascular edema. Inflammatory mediators that bind to heptahelical G protein-coupled receptors trigger increased endothelial permeability by increasing the intracellular Ca2+ concentration ([Ca2+]i). The rise in [Ca2+]i activates key signaling pathways that mediate cytoskeletal reorganization (through myosin-light-chain-dependent contraction) and the disassembly of VE-cadherin at the adherens junctions. The Ca2+-dependent protein kinase C (PKC) isoform PKCalpha plays a crucial role in initiating endothelial cell contraction and disassembly of VE-cadherin junctions. The increase in [Ca2+]i induced by inflammatory agonists such as thrombin and histamine is achieved by the generation of inositol 1,4,5-trisphosphate (IP3), activation of IP3-receptors, release of stored intracellular Ca2+, and Ca2+ entry through plasma membrane channels. IP3-sensitive Ca2+-store depletion activates plasma membrane cation channels (i.e., store-operated cation channels [SOCs] or Ca2+ release-activated channels [CRACs]) to cause Ca2+ influx into endothelial cells. Recent studies have identified members of Drosophila transient receptor potential (TRP) gene family of channels that encode functional SOCs in endothelial cells. These studies also suggest that the canonical TRPC homologue TRPC1 is the predominant isoform expressed in human vascular endothelial cells, and is the essential component of the SOC in this cell type. Further, evidence suggests that the inflammatory cytokine tumor necrosis factor-alpha can induce the expression of TRPC1 in human vascular endothelial cells signaling via the nuclear factor-kappaB pathway. Increased expression of TRPC1 augments Ca2+ influx via SOCs and potentiates the thrombin-induced increase in permeability in human vascular endothelial cells. Deletion of the canonical TRPC homologue in mouse, TRPC4, caused impairment in store-operated Ca2+ current and Ca2+-store release-activated Ca2+ influx in aortic and lung endothelial cells. In TRPC4 knockout (TRPC4-/-) mice, acetylcholine-induced endothelium-dependent smooth muscle relaxation was drastically reduced. In addition, TRPC4-/- mouse-lung endothelial cells exhibited lack of actin-stress fiber formation and cell retraction in response to thrombin activation of protease-activated receptor-1 (PAR-1) in endothelial cells. The increase in lung microvascular permeability in response to PAR-1 activation was inhibited in TRPC4-/- mice. These results indicate that endothelial TRP channels such as TRPC1 and TRPC4 play an important role in signaling agonist-induced increases in endothelial permeability.

摘要

内皮细胞通透性增加是炎症性血管水肿的标志。与七螺旋G蛋白偶联受体结合的炎症介质通过增加细胞内钙离子浓度([Ca2+]i)来引发内皮细胞通透性增加。[Ca2+]i的升高激活关键信号通路,介导细胞骨架重组(通过肌球蛋白轻链依赖性收缩)以及黏附连接处VE-钙黏蛋白的解离。钙离子依赖性蛋白激酶C(PKC)同工型PKCalpha在启动内皮细胞收缩和VE-钙黏蛋白连接解离过程中起关键作用。凝血酶和组胺等炎症激动剂诱导的[Ca2+]i增加是通过生成肌醇1,4,5-三磷酸(IP3)、激活IP3受体、释放储存的细胞内钙离子以及钙离子通过质膜通道内流实现的。IP3敏感的钙离子储存耗竭激活质膜阳离子通道(即储存操纵性阳离子通道[SOCs]或钙离子释放激活通道[CRACs]),导致钙离子流入内皮细胞。最近的研究已鉴定出果蝇瞬时受体电位(TRP)基因家族的通道成员,它们在内皮细胞中编码功能性SOCs。这些研究还表明,典型的TRPC同源物TRPC1是人类血管内皮细胞中表达的主要同工型,并且是该细胞类型中SOC的重要组成部分。此外,有证据表明炎症细胞因子肿瘤坏死因子-α可通过核因子-κB途径诱导人类血管内皮细胞中TRPC1的表达。TRPC1表达增加会增强通过SOCs的钙离子内流,并增强凝血酶诱导的人类血管内皮细胞通透性增加。小鼠中典型的TRPC同源物TRPC4的缺失导致主动脉和肺内皮细胞中储存操纵性钙离子电流以及钙离子储存释放激活的钙离子内流受损。在TRPC4基因敲除(TRPC4-/-)小鼠中,乙酰胆碱诱导的内皮依赖性平滑肌舒张显著降低。此外,TRPC4-/-小鼠肺内皮细胞在蛋白酶激活受体-1(PAR-1)在内皮细胞中被凝血酶激活后,表现出缺乏肌动蛋白应激纤维形成和细胞收缩。在TRPC4-/-小鼠中,PAR-1激活引起的肺微血管通透性增加受到抑制。这些结果表明,内皮TRP通道如TRPC1和TRPC4在信号传导激动剂诱导的内皮通透性增加中起重要作用。

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